A recent shift in centromere size and DNA content in Podospora pseudocomata co-occurs with the loss of a fungal genome defense system
Westerberg, I.; Li, M.; Mercier, E.; Ament-Velasquez, S. L.; Sandell, L.; Silar, P.; Vogan, A.; Grognet, P.; Malagnac, F.; Johannesson, H.
Show abstract
The centromere of the eukaryotic chromosome is necessary for the accurate segregation during cell division. Yet, centromeric DNA is highly variable and rapidly evolving. In fungi, centromeres range from point- to regional centromeres, some of which are hundreds of thousands of base pairs long and filled with transposable elements. As fungi have evolved several specialized defense mechanisms against transposable elements, these regional centromeres are intriguing sites for investigating the connection between genome defense and centromere evolution. Here, we investigated the structure of the centromeres of seven species of the Podospora anserina species complex, which is made up of closely related filamentous ascomycetes that diverged less than 1 MYA. We discovered that one species in the complex, P. pseudocomata, lacks the genomic signature of the specialized genome defense mechanism called Repeat Induced Point mutations (RIP). We identified the centromeric regions in P. anserina and P. pseudocomata using chromatin immunoprecipitation targeting the centromere-specific histone variant cenH3, and using comparative genomics we inferred the size of centromeric regions in the other species. We found that while the centromere structure in the complex is generally well conserved, the centromeric regions of P. pseudocomata has gone through a rapid change. Specifically, the size of the centromeres in P. pseudocomata are 35-46 kb, which is significantly smaller than those of the other species (44-90 kb), and the DNA-transposon discoglosse is the most abundant TE family instead of the typical LTR-retrotransposon crapaud. Taken together, our data strongly indicates a link between genome defense and centromere evolution in fungi.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Recurrent chromosome destabilization through repeat-mediated rearrangements in a fungal pathogen 95%
- Whole-genome sequence of Potamopyrgus antipodarum: a model system for the maintenance of sexual reproduction reveals a recent whole-genome duplication 95%
- Evolutionary and Comparative Analysis of bacterial Non-Homologous End Joining Repair 95%
Similar papers in this journal
- Transposon mediated horizontal transfer of the host-specific virulence protein ToxA between three fungal wheat pathogens 97%
- Chromosome-level genome assembly of a human fungal pathogen reveals synteny among geographically distinct species 96%
- Regional Centromere Configuration in the Fungal Pathogens of Pneumocystis Genus 96%
Similar papers in this journal
- Recent loss of the Dim2 DNA methyltransferase decreases mutation rate in repeats and changes evolutionary trajectory in a fungal pathogen 97%
- Genome biology and evolution of mating type loci in four cereal rust fungi 95%
- The widespread nature of Pack-TYPE transposons reveals their importance for plant genome evolution 94%
Similar papers in this journal
Similar papers in this journal
- Chromosome fusion affects genetic diversity and evolutionary turnover of functional loci, but consistently depends on chromosome size 97%
- Two independent origins of XY sex chromosomes in Asparagus 95%
- Recent evolution of a maternally-acting sex-determining supergene in a fly with single-sex broods 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.